Chow Ka Lai, Man Yu Bon, Tam Nora Fung Yee, Liang Yan, Wong Ming Hung
School of Environmental and Resource Sciences, Zhejiang Agriculture and Forestry University, Lin'an, Zhejiang 311300, PR China; Department of Geography, Hong Kong Baptist University, Hong Kong, China.
Consortium on Health, Environment, Education and Research (CHEER), Department of Science and Environmental Studies, The Hong Kong Institute of Education, Tai Po, Hong Kong, China.
Chemosphere. 2015 Jan;119:1262-1267. doi: 10.1016/j.chemosphere.2014.10.016. Epub 2014 Nov 1.
The extensive industrial use of brominated flame retardants has aroused rapidly growing public concerns about their ubiquity in the environment. The feasibility of uptake and translocation of decabromodiphenyl ether (BDE-209) by three rice cultivars, namely Fengmeizhan, Hefengzhan and Guangyinzhan, and the uptake mechanisms of BDE-209 into rice roots, were investigated by employing a partition-limited model. Uptake of BDE-209 by the rice cultivars (Fengmeizhan, Hefengzhan and Guangyinzhan) was examined by a 60-day cultivation in sterilized BDE-209 spiked sand, followed by Soxhlet extraction and gas chromatography-mass spectrometry (GC-MS) analysis. A partition-limited model was applied for estimating and describing the approach of the uptake of BDE-209 by rice in sand. The average quasi-equilibrium factor (αpt) of BDE-209 in root uptake in sand was 0.112×10(-3) for three rice cultivars in the present study (<1), implying a non-equilibrium movement of molecules and a dominated passive transport uptake. According to the results of sorption analysis of dead and fresh roots, apoplastic pathway likely dominated the transport of BDE-209 into roots cells.
溴化阻燃剂在工业上的广泛使用已引发公众对其在环境中无处不在的迅速增长的关注。采用分配限制模型研究了三个水稻品种(即丰美占、合丰占和广银占)对十溴二苯醚(BDE - 209)的吸收和转运可行性,以及BDE - 209进入水稻根系的吸收机制。通过在添加了BDE - 209的灭菌沙子中培养60天,随后进行索氏提取和气相色谱 - 质谱(GC - MS)分析,研究了水稻品种(丰美占、合丰占和广银占)对BDE - 209的吸收情况。应用分配限制模型来估计和描述水稻在沙子中对BDE - 209的吸收途径。在本研究中,三个水稻品种在沙子中根系吸收BDE - 209的平均准平衡因子(αpt)为0.112×10(-3)(<1),这意味着分子的非平衡运动以及主要的被动运输吸收。根据死根和鲜根的吸附分析结果,质外体途径可能主导了BDE - 209进入根细胞的运输。